Computational micro-mechanics is employed in this work to evaluate effects of fiber-matrix interface damage on the elastic properties of polymer matrix composites with continuous glass fibers. It is assumed that damage affects local zones along the fiber and a sector on the perimeter around the fiber. Elastic modulii are evaluated using Finite Element analysis, for a range of values in damage parameters considered. The occurrence of bi-modular behavior, with differences in Young?s modulus under tension and compression, has been represented by contact without friction. Based on extensive parametric results, a Least Squares Method is employed to derive analytical expressions for each material property as a function of damage parameters. In mo...
A three-dimensional (3D) micromechanics-based evolutionary damage model is proposed to predict the e...
Damage mechanisms in uni-directional fiber-reinforced plastics have been studied at the micro-scale ...
AbstractThis paper presents the application of a new constitutive damage model for an epoxy matrix o...
Due to variations in damage mechanisms in the microscale, the behavior of fiber-reinforced composite...
A micromechanical approach can promote understanding of composite material failure mechanisms and in...
This contribution shortly introduces the anisotropic, micromechanical damage model for sheet molding...
Fibre reinforced composites exhibit a gradual damage accumulation to failure, with a multitude of hi...
peer-reviewedFibre reinforced composites exhibit a gradual damage accumulation to failure, with a m...
Damage initiation and progression in uni-directional continuous polymer composites at the microscale...
Damage initiation and progression in uni-directional continuous polymer composites at the microscale...
A comprehensive numerical analysis of micromechanical damage behavior in a continuous fiber-resuborc...
AbstractThe influence of interface properties (strength and toughness) on the tensile behavior of fi...
AbstractThe simultaneous twoscale analysis of unidirectionally fiber reinforced composite structures...
The aim of present work is to predict the effect of fiber volume fraction and different damage mecha...
This book presents a broad exposition of analytical and numerical methods for modeling composite mat...
A three-dimensional (3D) micromechanics-based evolutionary damage model is proposed to predict the e...
Damage mechanisms in uni-directional fiber-reinforced plastics have been studied at the micro-scale ...
AbstractThis paper presents the application of a new constitutive damage model for an epoxy matrix o...
Due to variations in damage mechanisms in the microscale, the behavior of fiber-reinforced composite...
A micromechanical approach can promote understanding of composite material failure mechanisms and in...
This contribution shortly introduces the anisotropic, micromechanical damage model for sheet molding...
Fibre reinforced composites exhibit a gradual damage accumulation to failure, with a multitude of hi...
peer-reviewedFibre reinforced composites exhibit a gradual damage accumulation to failure, with a m...
Damage initiation and progression in uni-directional continuous polymer composites at the microscale...
Damage initiation and progression in uni-directional continuous polymer composites at the microscale...
A comprehensive numerical analysis of micromechanical damage behavior in a continuous fiber-resuborc...
AbstractThe influence of interface properties (strength and toughness) on the tensile behavior of fi...
AbstractThe simultaneous twoscale analysis of unidirectionally fiber reinforced composite structures...
The aim of present work is to predict the effect of fiber volume fraction and different damage mecha...
This book presents a broad exposition of analytical and numerical methods for modeling composite mat...
A three-dimensional (3D) micromechanics-based evolutionary damage model is proposed to predict the e...
Damage mechanisms in uni-directional fiber-reinforced plastics have been studied at the micro-scale ...
AbstractThis paper presents the application of a new constitutive damage model for an epoxy matrix o...